论文标题

星系和质量组装:GAMA组的发光度和出色的质量功能

Galaxy and Mass Assembly: luminosity and stellar mass functions in GAMA groups

论文作者

Vázquez-Mata, J. A., Loveday, J., Riggs, S. D., Baldry, I. K., Davies, L. J. M., Robotham, A. S. G., Holwerda, B. W., Brown, M. J. I., Cluver, M. E., Wang, L., Alpaslan, M., Bland-Hawthorn, J., Brough, S., Driver, S. P., Hopkins, A. M., Taylor, E. N., Wright, A. H.

论文摘要

星系性能(例如恒星质量,光度,恒星形成率和形态)以及它们的进化如何取决于其宿主暗物质晕的质量?使用银河系和质量组装(GAMA)组目录,我们通过探索对由颜色,形态和中央/卫星细分的分组星系的光度函数(LF)和恒星质量功能(SMF)的依赖性来解决这个问题。我们发现,球形星系尤其主导了LF和SMF的明亮和巨大末端。更大的光环构成更大,更发光的中央星系。卫星LF和SMF分别显示出特征性大小的系统亮度,并增加了特征性质量,并随着光环质量的增加。与以前的一些结果相比,微弱的末端和低质量斜率几乎没有系统地依赖光晕质量。半分析模型和模拟显示中央质量和光度对光环质量的依赖性相似或增强。微弱的低质量模拟卫星星系与光晕质量非常独立,但是最大的卫星在更大的群体中更为常见。在小组环境中首次对低红移LF和SMF演化的研究中,我们发现,由于红移$ z \ y y 0.3 $,相对于现场人群,星系中的红色/蓝色比例已经增加。该观察结果强烈表明,将星系中的恒星形成在星系组中淬灭是一个重要且持续的过程。

How do galaxy properties (such as stellar mass, luminosity, star formation rate, and morphology) and their evolution depend on the mass of their host dark matter halo? Using the Galaxy and Mass Assembly (GAMA) group catalogue, we address this question by exploring the dependence on host halo mass of the luminosity function (LF) and stellar mass function (SMF) for grouped galaxies subdivided by colour, morphology and central/satellite. We find that spheroidal galaxies in particular dominate the bright and massive ends of the LF and SMF, respectively. More massive haloes host more massive and more luminous central galaxies. The satellite LF and SMF respectively show a systematic brightening of characteristic magnitude, and increase in characteristic mass, with increasing halo mass. In contrast to some previous results, the faint-end and low-mass slopes show little systematic dependence on halo mass. Semi-analytic models and simulations show similar or enhanced dependence of central mass and luminosity on halo mass. Faint and low-mass simulated satellite galaxies are remarkably independent of halo mass, but the most massive satellites are more common in more massive groups. In the first investigation of low-redshift LF and SMF evolution in group environments, we find that the red/blue ratio of galaxies in groups has increased since redshift $z \approx 0.3$ relative to the field population. This observation strongly suggests that quenching of star formation in galaxies as they are accreted into galaxy groups is a significant and ongoing process.

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